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Optimal Scheduling and Real-Time State-of-Charge Management of Energy Storage System for Frequency Regulation

机译:调频储能系统的优化调度与实时计费管理

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An energy storage system (ESS) in a power system facilitates tasks such as renewable integration, peak shaving, and the use of ancillary services. Among the various functions of an ESS, this study focused on frequency regulation (or secondary reserve). This paper presents an optimal scheduling algorithm for frequency regulation by an ESS. This algorithm determines the bidding capacity and base point of an ESS in each operational period to achieve the maximum profit within a stable state-of-charge ( SOC ) range. However, the charging/discharging efficiency of an ESS causes SOC errors whenever the ESS performs frequency regulation. With an increase in SOC errors, the ESS cannot respond to an automatic generation control (AGC) signal. This situation results in low ESS performance scores, and finally, the ESS is disqualified from performing frequency regulation. This paper also presents a real-time SOC management algorithm aimed at solving the SOC error problem in real-time operations. This algorithm compensates for SOC errors by changing the base point of the ESS. The optimal scheduling algorithm is implemented in MATLAB by using the particle swarm optimization (PSO) method. In addition, changes in the SOC when the ESS performs frequency regulation in a real-time operation are confirmed using the PSCAD/EMTDC tool. The simulation results show that the optimal scheduling algorithm manages the SOC more efficiently than a commonly employed planning method. In addition, the proposed real-time SOC management algorithm is confirmed to be capable of performing SOC recovery.
机译:电力系统中的能量存储系统(ESS)有助于完成诸如可再生集成,调峰和使用辅助服务等任务。在ESS的各种功能中,本研究集中于频率调节(或次级储备)。本文提出了一种用于ESS频率调节的最优调度算法。该算法确定每个运营周期内ESS的出价能力和基点,以在稳定的荷电状态(SOC)范围内实现最大利润。然而,每当ESS执行频率调节时,ESS的充电/放电效率都会导致SOC错误。随着SOC错误的增加,ESS无法响应自动发电控制(AGC)信号。这种情况导致ESS性能得分较低,最后,ESS被取消执行频率调节的资格。本文还提出了一种实时SOC管理算法,旨在解决实时操作中的SOC错误问题。该算法通过更改ESS的基点来补偿SOC错误。最优调度算法是在MATLAB中使用粒子群优化(PSO)方法实现的。此外,使用PSCAD / EMTDC工具可以确认ESS在实时操作中执行频率调节时,SOC的变化。仿真结果表明,最优调度算法比常用的调度方法更有效地管理SOC。另外,证实了所提出的实时SOC管理算法能够执行SOC恢复。

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